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骨形态发生蛋白4诱导下骨骼肌内异位骨化的细胞来源
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作者 余洋溢 廉强 +3 位作者 吴建群 张轩 任晋可 李广恒 《中国组织工程研究》 CAS 北大核心 2024年第25期4034-4040,共7页
背景:骨骼肌异位骨化是临床上严重的并发症。对于骨骼肌异位骨化而言,其参与成骨过程中的细胞仍不明确。目的:观察肌细胞及筋膜细胞以及内皮细胞在骨肌中异位骨化过程中的参与情况,观察骨形态发生蛋白4诱导下骨骼肌内异位骨化的细胞来... 背景:骨骼肌异位骨化是临床上严重的并发症。对于骨骼肌异位骨化而言,其参与成骨过程中的细胞仍不明确。目的:观察肌细胞及筋膜细胞以及内皮细胞在骨肌中异位骨化过程中的参与情况,观察骨形态发生蛋白4诱导下骨骼肌内异位骨化的细胞来源。方法:培养C2C12细胞和诱导培养基数天下C 2 C 12细胞形成的肌管,将质量浓度500 ng/mL骨形态发生蛋白4分别加入培养基后,显微镜下观察处理10 d内C2C12细胞和肌管是否继续增殖;按不同比例共培养大鼠肌细胞(L6)和人成纤维源性细胞(fibroblast-derived cells,FDC),通过番红O染色和阿尔新蓝染色研究上述细胞在质量浓度500 ng/mL的骨形态发生蛋白4和质量浓度10 ng/mL的转化生长因子β3处理下21 d内成骨和成软骨分化潜力。使用转基因动物FVB/N-TgN(TIE2-LacZ)182Sato小鼠,通过在基因鼠大腿肌间隙植入含有15μL的腺相关病毒-骨形态发生蛋白4(5×1010 PFU/mL)10 d及14 d,再通过X-gal染色来观察异化骨中有无新血管内皮生成。结果与结论:①骨形态发生蛋白4导致肌束退化并增加C2C12细胞增殖。与其他组相比,FDC组具有较高的阿尔新蓝和番红O染色面积(P<0.05)和较低碱性磷酸酶染色面积(P<0.05);而L6组和其他组相比具有更大的碱性磷酸酶染色面积(P<0.05),但阿尔新蓝和番红O染色面积较小(P<0.05)。②将腺相关病毒-骨形态发生蛋白4吸附的明胶海绵移植到FVB/N-TgN(TIE2-LacZ)182Sato小鼠中会导致异位骨化。③X-gal染色结果显示,在软骨细胞及异化骨中无明显染色,提示Tie2+内皮细胞不参与异位骨化的形成。④结果证实,在腺相关病毒-骨形态发生蛋白4诱导的骨骼肌异位软骨化过程中,成纤维细胞是软骨细胞的主要细胞来源,而肌源性细胞是成骨细胞的主要来源。Tie2+内皮细胞可能不是软骨和骨的细胞来源。 展开更多
关键词 异位骨化 骨形态发生蛋白4 肌源性细胞 纤维源性细胞 Tie2+内皮细胞 骨骼肌 成骨细胞 软骨细胞 肌周膜 肌束
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AAV-mediated expression of p65shRNA and bone morphogenetic protein 4 synergistically enhances chondrocyte regeneration
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作者 Yu Yangyi Song Zhuoyue +2 位作者 Lian Qiang Ding Kang Li Guangheng 《中国组织工程研究》 CAS 北大核心 2025年第17期3537-3547,共11页
BACKGROUND:Adeno-associated virus(AAV)gene therapy has been proven to be reliable and safe for the treatment of osteoarthritis in recent years.However,given the complexity of osteoarthritis pathogenesis,single gene ma... BACKGROUND:Adeno-associated virus(AAV)gene therapy has been proven to be reliable and safe for the treatment of osteoarthritis in recent years.However,given the complexity of osteoarthritis pathogenesis,single gene manipulation for the treatment of osteoarthritis may not produce satisfactory results.Previous studies have shown that nuclear factorκB could promote the inflammatory pathway in osteoarthritic chondrocytes,and bone morphogenetic protein 4(BMP4)could promote cartilage regeneration.OBJECTIVE:To test whether combined application of AAV-p65shRNA and AAV-BMP4 will yield the synergistic effect on chondrocytes regeneration and osteoarthritis treatment.METHODS:Viral particles containing AAV-p65-shRNA and AAV-BMP4 were prepared.Their efficacy in inhibiting inflammation in chondrocytes and promoting chondrogenesis was assessed in vitro and in vivo by transfecting AAV-p65-shRNA or AAV-BMP4 into cells.The experiments were divided into five groups:PBS group;osteoarthritis group;AAV-BMP4 group;AAV-p65shRNA group;and BMP4-p65shRNA 1:1 group.Samples were collected at 4,12,and 24 weeks postoperatively.Tissue staining,including safranin O and Alcian blue,was applied after collecting articular tissue.Then,the optimal ratio between the two types of transfected viral particles was further investigated to improve the chondrogenic potential of mixed cells in vivo.RESULTS AND CONCLUSION:The combined application of AAV-p65shRNA and AAV-BMP4 together showed a synergistic effect on cartilage regeneration and osteoarthritis treatment.Mixed cells transfected with AAV-p65shRNA and AAV-BMP4 at a 1:1 ratio produced the most extracellular matrix synthesis(P<0.05).In vivo results also revealed that the combination of the two viruses had the highest regenerative potential for osteoarthritic cartilage(P<0.05).In the present study,we also discovered that the combined therapy had the maximum effect when the two viruses were administered in equal proportions.Decreasing either p65shRNA or BMP4 transfected cells resulted in less collagen II synthesis.This implies that inhibiting inflammation by p65shRNA and promoting regeneration by BMP4 are equally important for osteoarthritis treatment.These findings provide a new strategy for the treatment of early osteoarthritis by simultaneously inhibiting cartilage inflammation and promoting cartilage repair. 展开更多
关键词 OSTEOARTHRITIS adeno-associated virus bone morphogenetic protein 4 p65-short hairpin RNA gene therapy short hairpin RNA transforming growth factor-β1 extracellular matrix articular cartilage chondrocytes.
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